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Tytuł artykułu

Environmental influences on gravimetric Earth tides observations

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The following article presents the results of the adjustment (by means of the classical least squares method) of 3-year series of gravimetric Earth tides observations recorded in Observatory at Jozefoslaw (Józefosław - Poland) using LaCoste&Romberg model ET-26 gravimeter. The set of atmospheric data (pressure, temperature and humidity) has been taken into account in the analysis. Several models of ocean’s tides were compared to find out how large the indirect effect in Jozefoslaw is. Hydrological observations were made parallel to the gravity storage (soil moisture, water table changes, and rainfalls) to specify its influence to the gravity. Joint adjustment allowed us to determine reliable and precise model of gravimetric Earth tides for Jozefoslaw, which is an indispensable element for every geodynamical observatory. From 3-year data series we were able to obtain parameters (amplitude factor and phase shift) for 31 tidal components. The accuracy of single observation after adjustment (4.2 nm/s2) and the drift (-4.5 nm/s2 per month) are acceptable for this type of equipment. It is worth indicating that these observations are one of the most accurate that have ever been carried out in Poland.
Słowa kluczowe
Rocznik
Strony
41--57
Opis fizyczny
Bibliogr. 11 poz., rys., tab.
Twórcy
autor
  • Warsaw University of Technology
Bibliografia
  • Barlik M., Rogowski J. B. (1989): „Variation of the Plumb line Direction Obtained from Astronomical and Gravimetric Observations”. Prace Naukowe PW. Geodezja z. 33, pp. 135-168.
  • Bogusz J. (2000) - “Investigation of Atmospheric Influence to the Gravimetric Tidal Observations”. Warsaw University of Technology Printing House 2000. Ph. D. Thesis.
  • Chojnicki T. (1977): „Sur l’analyse des observations de marees terrestres”. Ann. Geophys., 33, 1/2, Edition du CNRS, Paris, pp. 157-160.
  • Crossley D., van Dam T. (1997): „Comprehensive Analysis of 2 years of SG Data from Table Mountain, Colorado”. Proceedings of the 13th International Symposium of Earth Tides, Brussels, August 22-September 1st, 1997. Série Géophysique of the Royal Observatory of Belgium : 3, Avenue Circulaire, B-1180, Brussels, Belgium, pp. 659-668.
  • Farrel, W.E. (1972): Deformation of the Earth by surface loads. Revue of Geophysics and Space Physics, Vol. 10, pp. 761-797.
  • Klügel T., Harnisch G., Harnisch M. (2006): „Measuring integral soil moisture variations using a geoelectrical resistivity meter”. Paper presented at the Workshop on Analysis of Data from Superconducting Gravimeters and Deformation Observations regarding Geodynamic Signals and Environmental Influences Jena, March 27-31, 2006. Bulletin d'Information des Marées Terrestres (BIM), No. 141-142, pp. 11369-11375, 15th August 2006.
  • Melchior P. (1983): “The Tides of the Planet Earth”. Pergamon Press.
  • Ray R. (1999): “A global ocean tide model from Topex/Poseidon altimetry: GOT99.2”. NASA Technical Memorandum 209478, 58 pages, Sept. 1999.
  • Torge, W. (1989): “Gravimetry”. Walter de Gruyter Verlag, Berlin 1989.
  • Van Camp, M., and Vauterin, P. (2005): “Tsoft: graphical and interactive software for the analysis of time series and Earth tides”, Computers & Geosciences, 31(5), pp. 631-640.
  • Wenzel H.-G. (1996): ”The nanogal software: Earth tide processing package ETERNA 3.30”. Bulletin d'Information des Marées Terrestres (BIM), No. 124, pp. 9425-9439, Bruxelles, 1996.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c07a63e6-2705-451e-afec-15bb9afccb59
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